Alpha College of Engg Tech Khatraj Gandhinagar EEE2110005

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Alpha College of Engg & Tech Khatraj, Gandhinagar EEE(2110005) 1 st SEM EE-A Group

Alpha College of Engg & Tech Khatraj, Gandhinagar EEE(2110005) 1 st SEM EE-A Group 10 1 PATEL ULKABEN RAJENDRAKUMAR (130510109079 ) 2 VINOD GIRI KHAMBHU GIRI (130510109108 ) 3 RAJPUT MOHIT MANOJSINGH (130510109042 ) 4 PATEL HARDIK PANKAJKUMAR (130510109060 ) 5 PATEL ANUJKUMAR PRAHLADBHAI (130510109055 ) 6 PARMAR MAYURKUMAR BHARATBHAI (130510109051 ) Faculty Name: 1 Prof. Narendra C. Mahavadia 2 Mr. Tushit M Desai

ILLUMINATION BY GROUP 10

ILLUMINATION BY GROUP 10

INTRODUCTION �All the day to day activities depend upon light �In the absence of

INTRODUCTION �All the day to day activities depend upon light �In the absence of natural light artificial light required. Artificial light is produced electrically

IMPORTANT TERMS �LIGHT: It is a form of electromagnetic energy radiated from a hot

IMPORTANT TERMS �LIGHT: It is a form of electromagnetic energy radiated from a hot body which can be sensed by naked eye. �LUMINOUS FLUX: the total quantity of light emitted per second from a luminus body is called luminous flux

IMPORTANT TERM �LUMINOUS INTENSITY: The luminous intensity of source in a given direction is

IMPORTANT TERM �LUMINOUS INTENSITY: The luminous intensity of source in a given direction is the intensity of the emission flux in that direction. The unit of the luminous intensity is CANDELA

IMPORTANT TERM �ILLUMINATION: When the light(luminous flux) falls upno any surface the phenomenon is

IMPORTANT TERM �ILLUMINATION: When the light(luminous flux) falls upno any surface the phenomenon is called illumination. it is measured in term of lumens/m sq or lux

LIGHTING SCHEMES �DIRECT LIGHTING �SEMI-INDIRECT LIGHTING �GENERAL LIGHTING

LIGHTING SCHEMES �DIRECT LIGHTING �SEMI-INDIRECT LIGHTING �GENERAL LIGHTING

LIGHTING SCHEMES �DIRECT LIGHTING: Itis most commonly used scheme. About 80% to 90%of total

LIGHTING SCHEMES �DIRECT LIGHTING: Itis most commonly used scheme. About 80% to 90%of total light flux is made to fall directly upon the working plane with help of suitable reflectors.

LIGHTING SCHEMES �SEMI-DIRECT LIGHTING: 60% to 90% of total light flux is made to

LIGHTING SCHEMES �SEMI-DIRECT LIGHTING: 60% to 90% of total light flux is made to fall directly downward with the help of semi direct reflectors. The remaining light is used to illuminate ceilings and walls.

LIGHTING SCHEMES �SEMI-INDIRECT LIGHTING: 60% to 90% of total light flux is made to

LIGHTING SCHEMES �SEMI-INDIRECT LIGHTING: 60% to 90% of total light flux is made to fall directly upwards to the ceiling by using inverted or bowl reflectors. Used in indoor decorations.

LIGHTING SCHEMES �INDIRECT LIGHTING: More than 90% of total light flux is thrown upward

LIGHTING SCHEMES �INDIRECT LIGHTING: More than 90% of total light flux is thrown upward to the ceiling for diffused reflection by blow reflectors. The ceiling is now act as indirect light source and reflect the light on working place

LIGHTING SCHEMES �GENERAL LIGHTING: This scheme is used to obtain diffused and glareless lighting

LIGHTING SCHEMES �GENERAL LIGHTING: This scheme is used to obtain diffused and glareless lighting which gives nearly equal illumination in all direction

LAMPS �TYPES OF LAMP: 1)INCANDESCENT LAMPS 2)DISCHARGE LAMPS

LAMPS �TYPES OF LAMP: 1)INCANDESCENT LAMPS 2)DISCHARGE LAMPS

INCANDESCENT LAMPS �TYPES OF INCANDESCENT LAMPS:

INCANDESCENT LAMPS �TYPES OF INCANDESCENT LAMPS:

VACUUME LAMP �Current is passed through filament. Temperature of the wire is raised and

VACUUME LAMP �Current is passed through filament. Temperature of the wire is raised and light as well as heat energy is emitted �Higher temperature higher amount of light is emitted. Thus the filament should be such material whose temperature can be raised quickly without causing any damage e. g. Tungsten

GAS FILLED LAMP �The melting point of tungsent is 3400 degree c. If the

GAS FILLED LAMP �The melting point of tungsent is 3400 degree c. If the tungsten filament is operated at about 2100 degree c , it vaporises rapidly and the life of lamp is very short �Hence the bulb is filled with an inert gas mostly nitrogen or argon. �The prevent arcing between two coil of spiral filament.

DISCHARGE LAMP �TYPE OF DIS CHARGE LAMP: 1)HPSV LAMP 2)HPMV LAMP

DISCHARGE LAMP �TYPE OF DIS CHARGE LAMP: 1)HPSV LAMP 2)HPMV LAMP

HIGH PRESSURE Mercury-vapor lamp(HPMV)

HIGH PRESSURE Mercury-vapor lamp(HPMV)

INTODUCTION OF HPMV LAMP �INTRODUCTION: Lamps of today are high pressure lamps with a

INTODUCTION OF HPMV LAMP �INTRODUCTION: Lamps of today are high pressure lamps with a fused quartz inner discharge tube. The high pressure helps increase efficiency and this was developed in 1936, 35 years after the low pressure lamps came out

WORKING OF HPMV LAMP �This lamp start with a small arc between the starting

WORKING OF HPMV LAMP �This lamp start with a small arc between the starting electrode and the main electrode. This arc goes through argon gas which easily strikes, even in cold weather. This little arc heats the tube, and over several minutes the tube gets hot enough to vaporize the solid mercury stuck to the sides. The mercury vaporized creates a strong light between the two main electrodes.

HIGH PRESSURE Sodium vapor lamp(HPSV)

HIGH PRESSURE Sodium vapor lamp(HPSV)

INTODUCTION OF HPSV LAMP �INTODUCTION: Sodium vapour lamps have replaced mercury lamps. Efficiency is

INTODUCTION OF HPSV LAMP �INTODUCTION: Sodium vapour lamps have replaced mercury lamps. Efficiency is about 40 to 50 lumens per watt avg life of 3000 hours. The glass tube is made specially chemical resistant to withstand the chemical reaction of hot sodium. The must be operated at horizontal position to keep sodium uniform throughout.

TYPES OF HPSV LAMPS

TYPES OF HPSV LAMPS

FLUORESCENT TUBES/LAMPS �FLUORESCENT TUBES: -

FLUORESCENT TUBES/LAMPS �FLUORESCENT TUBES: -

FLUORESCENT TUBES/LAMPS �FLUORESCENT LAMPS: FLUORESCENT TUBES/LAMPS

FLUORESCENT TUBES/LAMPS �FLUORESCENT LAMPS: FLUORESCENT TUBES/LAMPS

INTODUCTION OF FLUORESCENT TUBES/LAMPS �INTODUCTION: The tubes are filled with argon gas at low

INTODUCTION OF FLUORESCENT TUBES/LAMPS �INTODUCTION: The tubes are filled with argon gas at low pressure and one and two drop of mercury. The inner surface of the tube has thin coating of fluorescent material. Different types of colour can be obtained by this coating. The mercury vapour emits UV radiation when electric charge through it. The fluorescent coating convert UV radiation into visible light.

THANK YOU

THANK YOU